Newton's Second Law - Basic Mass Calculations (m = F / a)
In this engaging exercise, students will explore Newton's Second Law by calculating mass using the equation m = F / a, where students will apply real-world scenarios to determine how force and acceleration interact, solidifying their understanding of fundamental physics concepts. Through hands-on activities and problem-solving, learners will gain practical skills in analyzing forces and mastering the relationship between mass, force, and acceleration.
Questions
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MultiChoice
A net force of 100 N causes an object to accelerate at 5 m/s'. What is its mass?
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MultiChoice
Calculate mass if a force of 50 N results in an acceleration of 2 m/s'.
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MultiChoice
What mass accelerates at 3 m/s' under a net force of 30 N?
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MultiChoice
A force of 12 N causes an acceleration of 4 m/s'. Find the mass.
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MultiChoice
Find mass when force is 200 N and acceleration is 10 m/s'.
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MultiChoice
A force of 45 N accelerates an object at 9 m/s'. What is the mass?
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MultiChoice
An object accelerates at 4 m/s' under a force of 80 N. Calculate its mass.
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MultiChoice
What mass experiences an acceleration of 1.5 m/s' when pushed with 15 N?
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MultiChoice
A 60 N force produces an acceleration of 5 m/s'. Find the mass.
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MultiChoice
Find the mass of a crate that accelerates at 3 m/s' when pushed with 36 N.
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MultiChoice
A force of 90 N produces an acceleration of 2 m/s'. What is the mass?
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MultiChoice
Calculate mass when a net force of 140 N causes an acceleration of 7 m/s'.